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Cement Production
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Portland Cement By definition — a hydraulic cement produced by pulverizing clinker consisting essentially of hydraulic calcium silicates, usually containing one or more of the forms of calcium sulfate as an interground addition
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Source: PCA, 2003
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Raw Materials Necessary for Portland Cement Manufacture Must Provide the Following CalciumSilicaAluminaIron
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CalciumIronSilicaAluminaSulfate Alkali waste AragoniteCalcite Cement-kiln dust Cement rock ChalkClay Fuller’s earth LimestoneMarbleMarlSeashellsShaleSlag Blast-furnace flue dust Clay Iron ore Mill scale Ore washings Pyrite cinders Shale Calcium silicate Cement rock Clay Fly ash Fuller’s earth LimestoneLoessMarl Ore washings Quartzite Rice-hull ash SandSandstoneShaleSlagTraprock Aluminum-ore refuse Bauxite Cement rock Clay Copper slag Fly ash Fuller’s earth GranodioriteLimestoneLoess Ore washings ShaleSlagStauroliteAnhydrite Calcium sulfate Gypsum Source: PCA, 2003
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Traditional Manufacture of Portland Cement 1. Stone is first reduced to 125 mm (5 in.) size, then to 20 mm (3/4 in.), and stored. Source: PCA, 2003
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2.Raw materials are ground to powder and blended. or 2. Raw materials are ground, mixed with water to form slurry, and blended. Source: PCA, 2003
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3.Burning changes raw mix chemically into cement clinker. Source: PCA, 2003
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Source: Mindess, Young, and Darwin, 2004
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Source: Mindess, Young, & Darwin, 2004
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3.Burning changes raw mix chemically into clinker. Note four stage preheater, flash furnaces, and shorter kiln. Source: PCA, 2003
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Pyro- Processing
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Source: PCA, 2003
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4. Clinker is ground with gypsum into portland cement and shipped. Source: PCA, 2003
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Clinker Gypsum Source: PCA, 2003
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Grinding Clinker is ground with gypsum (calcium sulfate) to produce portland cement Fine grinding is necessary for high early strength –85-95% -325 mesh (45 microns) –~ 7 trillion particles per pound Gypsum absorbs water and prevents setting of C 3 A during shipment
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Source: van Oss and Padovani, 2002
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Process of Clinker Production Source: PCA, 2003
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Source: Taylor, 1997
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Source: MacLaren and White, 2003
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Clinker Phases Alite or 3CaOSiO 2 or C 3 S –Hydrates & hardens quickly –High early strength –Higher heat of hydration (setting) Belite or 2CaO SiO 2 or C 2 S –Hydrates & hardens slower than alite –Gives off less heat –High late strength (> 7 days) Modern cements are manufactured to be higher in alite for early strength
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Clinker Phases Aluminate or 3CaO Al 2 O 3 or C 3 A –Very high heat of hydration –Some contribution to early strength –Low C 3 A for sulfate resistance Ferrite or 4CaO Al 2 O 3 Fe 2 O 3 or C 4 AF –Little contribution to strength –Lowers clinkering temperature –Controls the color of cement
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Microscopic Images of Clinker
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Alite
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Microscopic Images of Clinker Belite
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Microscopic Images of Clinker Aluminate
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Microscopic Images of Clinker Ferrite
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